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Properties of atoms in crystals: Dielectric polarization

机译:晶体中原子的性质:介电极化

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It is shown that the polarization of a molecule or an extended system, permanent or induced can, like all measurable properties, be equated to a sum of atomic contributions. While it has been previously shown that a change in the polarization of a dielectric can be considered a consequence of a geometric quantum phase and obtainable from a Berry phase in a parameter space, such a possibility does not exclude a real space description, stated in terms of the charge distributions of the system's composite atoms or cells. The cells are defined as bounded regions of real space whose properties are described by the physics of a proper open system, a description that applies to any system regardless of the nature of the interactions between the atoms. This approach necessarily leads to the inclusion of a contribution to the polarization arising from the transfer of charge across the boundary of a cell, in addition to that from the cell's internal polarization, thereby correcting the textbook description of polarization that considers only the latter contribution. It is shown that a neutral repeating cell in a dielectric behaves as an atomic capacitor which mimics the macroscopic behavior, with the internal charge transfer leading to the creation of what Feynman terms the "surface polarization charge." (C) 2001 John Wiley & Sons, Inc. [References: 46]
机译:结果表明,像所有可测量的性质一样,永久性或诱导性的分子或扩展系统的极化可以等同于原子贡献的总和。尽管先前已经证明,可以将电介质极化的变化视为几何量子相的结果,并且可以从参数空间中的贝里相中获得,但这种可能性并不排除对实际空间的描述,用术语系统的复合原子或单元的电荷分布。单元定义为真实空间的有界区域,其属性由适当的开放系统的物理性质描述,该描述适用于任何系统,而与原子之间相互作用的性质无关。除了从电池的内部极化产生的电荷转移之外,这种方法还必然导致对电荷的极化产生的极化贡献,该极化是通过电池边界进行的,因此,更正了关于极化的教科书描述,只考虑了后者的贡献。结果表明,电介质中的中性重复单元的行为就像是模仿宏观行为的原子电容器,内部电荷转移导致费曼称之为“表面极化电荷”的产生。 (C)2001 John Wiley&Sons,Inc. [参考:46]

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